首页> 外文会议>Offshore Technology Conference (OTC 2012). >Evaluation of Fault Reactivation Potential During Offshore Methane Hydrate Production in Nankai Trough, Japan
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Evaluation of Fault Reactivation Potential During Offshore Methane Hydrate Production in Nankai Trough, Japan

机译:日本南海槽生产甲烷水合物的断层再活化潜能评估

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Large accumulations of methane hydrates are known to exist in the Nankai Trough located off the southern coast of Japan.rnDue to its enormous potential as an energy source, there is growing interest in the production of methane gas from theserndeposits. However, gas hydrate production may cause significant compaction of unconsolidated formations and triggerrnreactivation of faults during production. Compaction can damage well infrastructure, and reactivation of faults could providernpotential leakage pathways for methane gas, which could endanger offshore operations.rnThis paper presents a study in which the potential risk of fault reactivation was evaluated in the Nankai Trough. In thernstudy, laboratory test data obtained from core samples with methane hydrates were analyzed to determine the effect of gasrnhydrates on the mechanical properties of formations. By integrating log and drilling data, one-dimensional (1D) mechanicalrnearth models were constructed to determine in-situ stresses and mechanical properties along wells in the study area.rnSubsequently, a three-dimensional (3D) geomechanical model of the field was constructed using Bayesian inversion of seismicrnand well data. In addition, faults were mapped from 3D seismic data using an advanced automated fault mapping technique.rnThese faults, the mechanical properties obtained from Bayesian inversion, and estimates of post-production gas hydraternsaturation and pore pressure generated by a gas hydrate reservoir simulator were incorporated into a 3D finite-elementrnreservoir geomechanics simulator. The potential risk of fault reactivation that may cause production problem such asrncommunication between a reservoir and seafloor was evaluated by analyzing the deformation and slip potential of faults for arngiven production scenario.rnThis study revealed that a major fault could be reactivated during methane hydrate production if the production well isrnlocated close to the fault. The simulations provided critical information pertaining to the selection of production sites and thernminimization of potential risks associated with fault reactivation. Additionally, as the prospect of commercial production ofrnmethane hydrate becomes more promising, the workflow developed in this project will become one of the key technologies forrnexploiting this new energy resource in the long term.
机译:已知在日本南部沿海的南海海槽中存在大量的甲烷水合物。由于其作为能源的巨大潜力,人们越来越关注从沉积矿中生产甲烷气的兴趣。但是,天然气水合物的生产可能导致未固结地层的显着压实,并在生产过程中引发断层的再活化。压实会损坏井的基础设施,断层的重新活化可能会提供潜在的甲烷气泄漏通道,从而危害海上作业。rn本文进行了一项研究,对南开海槽中断层的潜在活化风险进行了评估。在研究中,分析了从含甲烷水合物的岩心样品中获得的实验室测试数据,以确定天然气水合物对地层力学性能的影响。通过整合测井和钻探数据,构建一维(1D)机械土模型来确定研究区域沿井的原位应力和力学性质。随后,使用该模型构建了三维(3D)现场地质力学模型地震测井数据的贝叶斯反演。此外,使用先进的自动断层映射技术从3D地震数据中绘制断层图.rn这些断层,从贝叶斯反演获得的力学性能以及由天然气水合物储层模拟器产生的生产后天然气水合物饱和度和孔隙压力的估计值被纳入3D有限元储层地质力学模拟器。通过分析给定生产情景下断层的变形和滑动潜力,评估了可能引起生产问题(如储层与海底之间的连通)的断层复活的潜在风险。这项研究表明,如果甲烷水合物的生产过程中,重大断层可以重新活化。生产井位于故障附近。模拟提供了与选择生产地点以及最小化与故障重新激活相关的潜在风险有关的关键信息。此外,随着甲烷水合物商业化生产的前景越来越广阔,该项目开发的工作流程将成为长期开发这种新能源的关键技术之一。

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